首页> 外文会议>World Conference on Non-Destructive Testing >AN INVESTIGATION INTO THE POTENTIAL OF MICROWAVE NDE FOR MARITME APPLICATION
【24h】

AN INVESTIGATION INTO THE POTENTIAL OF MICROWAVE NDE FOR MARITME APPLICATION

机译:对海事施用微波NDT潜力的调查

获取原文

摘要

The ability of microwaves to penetrate dielectric materials has been shown to produce unique inspection capabilities and potentially large cost benefits when applied to some inspection tasks usually performed using more traditional NDE methods. Fibre reinforced polymeric (FRP) materials and in particular FRP sandwich composites are finding increased use in the field of maritime structures and this investigation has demonstrated the ability of microwave NDE to detect near-side, core and far-side defects including skin/core debonding, core cracking and impact damage. It is also the case that maritime vessels employ large volumes of lagging materials to restrict heat emission from pipework and also to prevent condensation, e.g. on the inner side of a hull. Defects may grow unseen beneath this lagging and it is traditionally only by removal of all insulation that an NDE inspection may be performed. However, by employing the ability of microwaves to pass through non-conducting media it has been shown that not only defects within FRP structures, but also, corrosion/wall thinning and surface breaking defects in metallic components can be detected without the necessity of removing lagging. It is therefore envisaged that such an inspection method would lead to large cost benefits to the owners and operators of such vessels.
机译:微波以穿透介电材料的能力已经显示出在应用于通常使用更传统的NDE方法的一些检查任务时产生独特的检查能力,并且可能大的成本效益。纤维增强聚合物(FRP)材料和特定的FRP夹心复合材料在海上结构领域发现使用增加,并且该研究表明了微波NDE检测近侧,核心和远侧缺陷的能力,包括皮肤/核心剥离,核心开裂和冲击损伤。也是如此,海上船只采用大量的滞后材料来限制管道的热排放,也可以防止冷凝,例如凝结。在船体的内侧。缺陷可能在这种滞后下方不均匀,传统上仅通过去除可以执行NDE检查的所有绝缘。然而,通过采用微波通过非导电介质的能力,已经显示出不仅可以在FRP结构内缺陷,而且可以检测到金属部件中的腐蚀/壁变薄和表面破坏缺陷,而无需去除滞后的必要性。因此,因此设想这种检验方法将导致该船舶的业主和运营商带来大的成本效益。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号